70HF(R) SERIES 70 A. Stud Version STANDARD RECOVERY DIODES. Features. Typical Applications. Major Ratings and Characteristics

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1 70HF(R) SERIES STANDARD RECOVERY DIODES Stud Version Features High surge current capability Designed for a wide range of applications Stud cathode and stud anode version Leaded version available 70 A Types up to 1600V V RRM Typical Applications Battery charges Converters Power supplies Machine tool controls Major Ratings and Characteristics Parameters 70HF(R) 10 to 140 to 160 Units I F(AV) T C C I F(RMS) 110 A I 50Hz 0 60Hz 1250 A I 2 50Hz 7 A2 60Hz 6450 A 2 s V RRM range to to 1600 V T J range - 65 to to 150 C case style DO-203AB (DO-5) 1

2 ELECTRICAL SPECIFICATIONS Voltage Ratings Voltage V RRM, maximum V RSM, maximum non- V R(BR), minimum I RRM Type number Code repetitive peak repetitive peak T J reverse voltage reverse voltage voltage V V V ma HF(R) Forward Conduction Parameter 70HF(R) 10 to 140 to 160 Units Conditions I F(AV) Max. average forward current A conduction, half sine Case temperature C I F(RMS) Max. RMS forward current 110 A I FSM Max. peak, one-cycle forward, 0 t = 10ms No voltage non-repetitive surge current 1250 A t = 8.3ms reapplied 0 t = 10ms % V RRM 1050 t = 8.3ms reapplied Sinusoidal half wave, I 2 t Maximum I 2 t for fusing 7 t = 10ms No voltage Initial T J 6450 A 2 s t = 8.3ms reapplied 5000 t = 10ms % V RRM 4550 t = 8.3ms reapplied I 2 t Maximum I 2 t for fusing 70 A 2 s t = 0.1 to 10ms, no voltage reapplied V F(TO)1 Low level value of threshold voltage 0.79 (16.7% x π x I F(AV) < I < π x I F(AV) ), T J V V F(TO)2 High level value of threshold voltage 1.00 (I > π x I F(AV) ), T J r f1 Low level value of forward 2.33 (16.7% x π x I F(AV) < I < π x I F(AV) ), T J slope resistance mω r f2 High level value of forward slope resistance 1.53 (I > π x I F(AV) ), T J V FM Max. forward voltage drop V I pk = 220A, T J = 25 C, t p = 400µs rectangular wave 2

3 Thermal and Mechanical Specifications 70HF(R) Parameter Units Conditions 10 to 140 to 160 T J Max. junction operating temperature range -65 to to 150 T stg Max. storage temperature range -65 to to 150 R thjc Max. thermal resistance, junction to case 0.45 DC operation R thcs Max. thermal resistance, case K/W Mounting surface, smooth, flat and 0.25 to heatsink greased T Allowable mounting torque % Nm Not lubricated threads 30 lbf in % Nm Lubricated threads 20 lbf in wt Approximate weight 17 (0.6) g (oz) Case style DO-203AB (DO5) See Outline Table R thjc Conduction (The following table shows the increment of thermal resistence R thjc when devices operate at different conduction angles than DC) Conduction angle Sinusoidal conduction Rectangular conduction Units Conditions T J Ordering Information Table C K/W Device Code 70 HF R 160 M = Standard device 71 = Not isolated lead 72 = Isolated lead with silicone sleeve (Red = Reverse polarity) (Blue = Normal polarity) 2 - HF = Standard diode 3 - None= Stud Normal Polarity (Cathode to Stud) R = Stud Reverse Polarity (Anode to Stud) 4 - Voltage code: Code x 10 = V RRM (See Voltage Ratings table) 5 - None= Stud base DO-203AB (DO-5) 1/4" 28UNF-2A M = Stud base DO-203AB (DO-5) M6 X 1 3

4 Outlines Table 70HF(R) Case Style DO-203AB (DO-5) All dimensions in millimeters (inches) 71HF(R) Case Style DO-203AB (DO-5) All dimensions in millimeters (inches) 4

5 Maximum Allowable Case Temperature ( C) (V to 0V) R thjc (DC) = 0.45 K/W Conduction Angle Maximum Allowable Case Temperature ( C) (V to 0V) R thjc (DC) = 0.45 K/W Conduction Period 130 DC Average Forward Current (A) Average Forward Current (A) Fig. 1 - Current Ratings Characteristics Fig. 2 - Current Ratings Characteristics Maximum Allowable Case Temperature ( C) (1400V to 1600V) R thjc (DC) = 0.45 K/W Conduction Angle Maximum Allowable Case Temperature ( C) (1400V to 1600V) R thjc (DC) = 0.45 K/W Conduction Period DC Average Forward Current (A) Average Forward Current (A) Fig. 3 - Current Ratings Characteristics Fig. 4 - Current Ratings Characteristics Maximum Average Forward Power Loss (W) RMS Limit Conduction Angle 1.5 K/W (V to 0V) T J = C Average Forward Current (A) Maximum Allowable Ambient Temperature ( C) 2 K/W 3 K/W 4 K/W 5 K/W 1 K/W 0.7 K/W 0.5 K/W R = 0.3 K/W - Delta R thsa Fig. 5 - Forward Power Loss Characteristics 5

6 Maximum Average Forward Power Loss (W) DC RMS Limit Conduction Period 1.5 K/W 2 K/W 3 K/W 5 K/W 20 (V to 0V) T J = C Average Forward Current (A) Maximum Allowable Ambient Temperature ( C) 1 K/W 0.7 K/W 0.5 K/W R = 0.3 K/W - Delta R thsa Fig. 6 - Forward Power Loss Characteristics Maximum Average Forward Power Loss (W) RMS Limit Conduction Angle 1.5 K/W (1400V to 1600V) T J = 150 C Average Forward Current (A) Maximum Allowable Ambient Temperature ( C) 2 K/W 3 K/W 4 K/W 5 K/W 1 K/W 0.7 K/W 0.5 K/W R = 0.3 K/W - Delta R thsa Fig. 7 - Forward Power Loss Characteristics Maximum Average Forward Power Loss (W) DC RMS Limit Conduction Period 0.7 K/W 0.5 K/W R = 0.3 K/W - Delta R 20 (1400V to 1600V) T J = 150 C Average Forward Current (A) Maximum Allowable Ambient Temperature ( C) 1 K/W 1.5 K/W 2 K/W 3 K/W 5 K/W thsa Fig. 8 - Forward Power Loss Characteristics 6

7 Peak Half Sine Wave Forward Current (A) At Any Rated Load Condition And With Rated V RRM Applied Following Surge. Initial T J 60 Hz Hz 0.0 s Peak Half Sine Wave Forward Current (A) 0 Maximum Non Repetitive Surge Current 1 Versus Pulse Train Duration. 0 Initial T J Max. No Voltage Reapplied 900 Rated V RRM Reapplied Number Of Equal Amplitude Half Cycle Current Pulses (N) Pulse Train Duration (s) Fig. 9 - Maximum Non-Repetitive Surge Current Fig Maximum Non-Repetitive Surge Current Instantaneous Forward Current (A) 0 10 T = 25 C J T = T Max. J J Instantaneous Forward Voltage (V) Fig Forward Voltage Drop Characteristics Transient Thermal Impedance Z thjc (K/W) Steady State Value R thjc = 0.45 K/W (DC Operation) Square Wave Pulse Duration (s) Fig Thermal Impedance Z thjc Characteristics Instantaneous Forward Current (A) Instantaneous Forward Voltage (V) Fig Forward Voltage Drop Characteristics 7

8 Data and specifications subject to change without notice. This product has been designed and qualified for Industrial Level. Qualification Standards can be found on IR's Web site. IR WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245, USA Tel: (310) TAC Fax: (310) Visit us at for sales contact information. 01/05 8

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